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Journal ArticleDOI

A simple method for measurement of mechanical power in jumping.

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TLDR
The new jumping test seems suitable to evaluate the power output of leg extensor muscles during natural motion because of its high reproducibility and simplicity, and is suitable for laboratory and field conditions.
Abstract
A simple test for the measurement of mechanical power during a vertical rebound jump series has been devised. The test consists of measuring the flight time with a digital timer (+/- 0.001 s) and counting the number of jumps performed during a certain period of time (e.g., 15-60 s). Formulae for calculation of mechanical power from the measured parameters were derived. The relationship between this mechanical power and a modification of the Wingate test (r = 0.87, n = 12 males) and 60 m dash (r = 0.84, n = 12 males) were very close. The mechanical power in a 60 s jumping test demonstrated higher values (20 W X kgBW-1) than the power in a modified (60 s) Wingate test (7 W X kgBW-1) and a Margaria test (14 W X kgBW-1). The estimated powers demonstrated different values because both bicycle riding and the Margaria test reflect primarily chemo-mechanical conversion during muscle contraction, whereas in the jumping test elastic energy is also utilized. Therefore the new jumping test seems suitable to evaluate the power output of leg extensor muscles during natural motion. Because of its high reproducibility (r = 0.95) and simplicity, the test is suitable for laboratory and field conditions.

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Citations
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Journal ArticleDOI

Ultrasonographic Measurements of the Achilles Tendon in Elderly Athletes and Sedentary Men

TL;DR: The results suggest tendon hypertrophy following long-term training in male elderly athletes and sedentary men may indicate a tendency for larger cross-sectional area in the athletes.
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Relationship between the 30-second wingate test and characteristics of isometric and explosive leg strength in young subjects.

TL;DR: Regular physical activity has a positive significant relation on WT power, ILS, and ELS in both sedentary men and women and those engaged in regular sports activities.
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A wearable system to assess risk for anterior cruciate ligament injury during jump landing: measurements of temporal events, jump height, and sagittal plane kinematics.

TL;DR: The wearable system demonstrated good concurrent validity with marker-based measurements and good discriminative performance in terms of the known risk factors for ACL injury, and demonstrated that the proposed wearable system could identify movements at higher risk for ACL injuries.
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Comparison of ground reaction force asymmetry in one- and two-legged countermovement jumps.

TL;DR: This study examined whether ground reaction force (GRF) asymmetry of 2-legged countermovement jumps (CMJ) is related to 1-legged CMJ asymmetry, and found that impulse asymmetries found in the 1- and 2- Legs CMJ were unrelated.
Journal ArticleDOI

On the assessment of lower-limb muscular power capability

TL;DR: CMJ is highly reliable and it allows a valid assessment of muscular power, and is the recommended method for testing lower-limb muscular power capability.
References
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Journal Article

Utilization of stored elastic energy in leg extensor muscles by men and women

TL;DR: The results suggest that although the leg extensor muscles of the men subjects could sustain much higher stretch loads, the females may be able to utilize a greater portion of the stored elastic energy in jumping activities.
Journal ArticleDOI

Biomechanical analysis of knee flexion and extension

TL;DR: For the knee, mathematical analyses for the sagittal plane were performed on data obtained from roentgenograms and a load cell incorporated in a specially constructed force table to find the axis of rotation for the knee displaced 3·2 cm through a 90° range.
Journal ArticleDOI

Storage of Elastic Energy in Skeletal Muscles in Man

TL;DR: It is suggested that the elastic energy is stored in the active muscles, and it is demonstrated that the muscles of the legs are activated in the downward jumps before contact with the platform is established.
Journal ArticleDOI

Combined effect of elastic energy and myoelectrical potentiation during stretch-shortening cycle exercise

TL;DR: The observed results emphasize that both elastic energy and reflex potentiation may operate effectively during stretch-shortening cycle activity.
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